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Silane-initiated nucleation in chemically active plasmas: validation of density functionals, mechanisms, and pressure-dependent variational transition state calculations

机译:硅烷在化学活性等离子体中引发的成核作用:验证密度泛函,机理和与压力有关的变化过渡态计算

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The growth of anionic silicon hydride clusters is a critically important process in nanodusty plasmas. In the current study, we focus on the formation of homologs of silylene (Sin+1H2n+2-, n = 3, 4) and silyl (SinH2n+1-, n = 4, 5) anions via anion-neutral reaction pathways. Species like silyl or silylene anions and their related elementary reactions, which are involved in the formation of silicon hydride clusters, were not used in developing exchange-correlation (xc) density functionals (i.e., they were not included in the training set of semiempirical density functionals); therefore, we explored the accuracy of various widely used xc density functionals based on reaction energies and barrier heights. Among the 21 density functionals we tested, M06-2X has the best performance for a hybrid functional, and MN15-L has the best performance for a local functional. Thermal rate constants of the elementary reactions involved in the reaction mechanism are calculated using M06-2X and multistructural canonical variational transition state theory with the small-curvature tunneling approximation (MS-CVT/SCT). The pressure dependence of unimolecular isomerization reactions is treated with system-specific quantum RRK theory (SS-QRRK) and the Lindemann-Hinshelwood mechanism.
机译:在纳米尘浆等离子体中,阴离子氢化硅簇的生长是至关重要的过程。在当前的研究中,我们专注于通过阴离子-中性反应途径形成甲硅烷基(Sin + 1H2n + 2-,n = 3,4)和甲硅烷基(SinH2n + 1-,n = 4,5)的同系物。涉及硅氢化物簇形成的物种如甲硅烷基或甲硅烷基阴离子及其相关的基本反应,并未用于开发交换相关(xc)密度泛函(即,它们不包括在半经验密度的训练集中)功能);因此,我们根据反应能和势垒高度探索了各种广泛使用的xc密度泛函的准确性。在我们测试的21种密度功能部件中,M06-2X在混合功能部件中具有最佳性能,而MN15-L在本地功能部件中具有最佳性能。使用M06-2X和具有小曲率隧道近似(MS-CVT / SCT)的多结构规范变分过渡态理论,计算了反应机理中涉及的基本反应的热速率常数。使用系统特定的量子RRK理论(SS-QRRK)和Lindemann-Hinshelwood机理处理了单分子异构化反应的压力依赖性。

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